US10200112B2

Servicing cell selection in air to ground communication systems

Summary by NHIP

Airborne Serving Cell Selection

The system commands an aircraft antenna and transceiver to measure signal-to-noise ratios for two non-overlapping ground communication channels. It then selects a transmission channel using a forward link user capacity matrix generated from estimates based on those specific signal-to-noise ratios.

Claim Score by NHIP

Read claim 13, the broadest

Abstract

Selecting serving cells in air to ground communication systems efficiently and with maximum knowledge of forward and return link channel conditions allows maximum throughput available to a user at any point in time, particularly in the presence of high interference. Airborne based and ground based systems may collect forward and return link channel conditions and develop user capacity estimates to be used by aircraft and ground based transceivers. Such user capacity estimates may be shared among distributed air-to-ground networks to ensure the latest channel conditions are available for serving cell selection decisions.

US10200112B2, drawing sheet 1
Sheet 1 of 7

Term

10.1 yearsleft in the term

Expires 15 November 2036.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

20 claims: 3 independent, 17 dependent

  1. 1
    A non-transitory computer readable medium, comprising processor executable instructions that when executed by a computer processor disposed within an airborne aircraft cause the computer processor to:command a directional antenna installed on the aircraft and a transceiver disposed within the aircraft to measure a first signal-to-noise ratio of a first communication channel corresponding to a first location on the ground, the first communication channel configured to support transmissions to/from the airborne aircraft;command the directional antenna and the transceiver to measure a second signal-to-noise ratio of a second communication channel corresponding to a second location on the ground, the second communication channel configured to support transmissions to/from the airborne aircraft;and select, using a forward link user capacity matrix, a particular communication channel to utilize for transmissions between a plurality of ground stations disposed on the ground and the airborne aircraft, the forward link user capacity matrix generated from a first forward link user capacity estimate based upon the first signal-to-noise ratio of the first communication channel and from a second forward link user capacity estimate based on the second signal-to-noise ratio of the second communication channel.
  2. 7
    A computer-implemented method, executed with a computer processor disposed within an air-to-ground communication ground station, comprising:commanding, via the computer processor, a directional antenna installed on the aircraft and a transceiver disposed within the aircraft to measure a first signal-to-noise ratio of a first communication channel corresponding to a first location on the ground, the first communication channel configured to support transmissions to/from the airborne aircraft;commanding, via the computer processor, the directional antenna and the transceiver to measure a second signal-to-noise ratio of a second communication channel corresponding to a second location on the ground, the second communication channel configured to support transmissions to/from the airborne aircraft;selecting, using a forward link user capacity matrix, a particular communication channel that corresponds to the forward link user capacity matrix to utilize for transmissions between a plurality of ground stations disposed on the ground in the airborne aircraft, the forward link user capacity matrix generated from a first forward link user capacity estimate based upon the first signal-to-noise ratio of the first communication channel and from a second forward link user capacity estimate based upon the second signal-to-noise ratio of the second communication channel.
  3. 13
    Broadest claimClaim Score 38, average(NHIP)A computer system comprising one or more processors and/or transceivers configured to:select, using a forward link user capacity matrix, a communication channel to utilize for transmissions between a plurality of ground stations disposed on the ground and an airborne aircraft, the forward link user capacity matrix generated from a first forward link user capacity estimate based upon a first signal-to-noise ratio of a first communication channel corresponding to a first location on the ground and from a second forward link user capacity estimate based on a second signal-to-noise ratio of a second communication channel corresponding to a second location on the ground, the first signal-to-noise ratio and the second signal-to-noise ratio respectively measured using a directional antenna and a transceiver disposed at the aircraft;and command the directional antenna and the transceiver to transmit or receive, via the selected communication channel, data between the airborne aircraft and a particular serving cell at a particular ground station corresponding to the selected communication channel, the particular ground station included in the plurality of ground stations.